A self-superheterodyne Rydberg vapor-cell array uses satellite Doppler for IF generation and optimizes cell-level LO amplitudes and phases to shape the effective channel and raise Shannon capacity.
A vision of 6G wireless systems: Applications, trends, technologies, and open research problems
4 Pith papers cite this work. Polarity classification is still indexing.
years
2026 4verdicts
UNVERDICTED 4representative citing papers
Proposes CALO framework that maps grouped fractional variables through constraint-preserving transforms, uses straight-through estimator for discrete assignments, and a regret-driven hinge loss against BCD to achieve feasible real-time joint allocation in double-active RIS networks.
Measurements of 15 GHz UM-MIMO channels in UMi environments quantify path loss, delay/angular spreads, near-field effects, spatial non-stationarity, channel hardening, and capacity across 81 links in LoS and foliage scenarios.
Interprets 3GPP TR 38.914 to identify design drivers such as terrestrial-non-terrestrial integration, GNSS-free operation, AI-native networking, and joint communication-sensing for 6G systems.
citing papers explorer
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Cell-Level Channel Shaping for Rydberg Atomic Quantum Receivers in Satellite Uplinks With Doppler-Enabled Superheterodyne Reception
A self-superheterodyne Rydberg vapor-cell array uses satellite Doppler for IF generation and optimizes cell-level LO amplitudes and phases to shape the effective channel and raise Shannon capacity.
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CALO: Constraint-Aware Learning Optimization for Joint Resource Allocation in Double-Active RIS-Assisted Wireless Networks
Proposes CALO framework that maps grouped fractional variables through constraint-preserving transforms, uses straight-through estimator for discrete assignments, and a regret-driven hinge loss against BCD to achieve feasible real-time joint allocation in double-active RIS networks.
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Measurement-Based Ultra-Massive MIMO Statistical Channel Characterization and System Performance Evaluation for UMi Environments at 15 GHz FR3 Spectrum
Measurements of 15 GHz UM-MIMO channels in UMi environments quantify path loss, delay/angular spreads, near-field effects, spatial non-stationarity, channel hardening, and capacity across 81 links in LoS and foliage scenarios.
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From 6G Scenarios and Requirements to Design Drivers: Insights from 3GPP Release 20
Interprets 3GPP TR 38.914 to identify design drivers such as terrestrial-non-terrestrial integration, GNSS-free operation, AI-native networking, and joint communication-sensing for 6G systems.